Collagena Fixing Powder Matte Finish SPF 50

Collagena Fixing Powder Matte Finish SPF 50

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Ingredients
Overview
Detail
Explanation
Review
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Analysis results of Ingredients

Quick Ingredient Notes
Paraben free
Sulfate free
Alcohol free
Silicone free
Fungal Acne Safe
EU Allergent Free
Fragrance free
Key Ingredients
Moisturizing
Moisturizing
from (1) ingredient:
Zinc Oxide
Anti Aging
Anti Aging
from (1) ingredient:
Avena Sativa (Oat) Kernel Flour
UV Protection
UV Protection
from (2) ingredient:
Titanium Dioxide Zinc Oxide
Ingredients Related to Skin Types
Click the arrows next to Skin Type! Green = Good & Red = Bad
Dry skin
Dry skin
1
Oily Skin
Oily Skin
1
Sensitive skin
Sensitive skin
1
Ingredient Safety Breakdown (EWG Health Ratings)
Low Risk
Moderate Risk
High Risk
Unknown
63%
25%

Ingredient List

EWG CIR Ingredient Name & Cosmetic Function Notes
1
-
(Skin Conditioning, Viscosity Controlling, Binding, Absorbent, Bulking Agent)
1
-
(Viscosity Controlling, Viscosity Increasing Agent, Abrasive, Absorbent, Bulking Agent)
Anti Aging
Good for dry skin
1
-
2
9
-
(Skin Protecting, Cosmetic Colorant, Sunscreen Agent, Bulking Agent)
UV Protection
Good for oily skin
Moisturizing

Collagena Fixing Powder Matte Finish SPF 50 - Ingredient Explanation

Clay

Function: Skin Conditioning, Viscosity Controlling, Binding, Absorbent, Bulking Agent

1. Definition Clay:

Clay in cosmetics refers to natural mineral compounds that are used in various skincare and makeup products for their absorbent, cleansing, and purifying properties. These clays are typically sourced from the earth and can vary in color, composition, and benefits for the skin.

2. Use:

Clay is commonly used in cosmetics for its ability to absorb excess oil, dirt, and impurities from the skin, making it a popular ingredient in masks, cleansers, and exfoliators. It is also known for its gentle exfoliating properties, helping to unclog pores and improve skin texture. Additionally, clay can help to soothe irritation and inflammation, making it suitable for sensitive or acne-prone skin.

3. Usage Clay:

When using clay in cosmetics, it is important to follow the instructions provided on the product packaging to avoid any adverse reactions. It is recommended to do a patch test before applying clay products to the entire face to check for any sensitivity or allergies. Clay masks should be applied evenly to clean, dry skin and left on for the recommended amount of time before rinsing off with warm water. It is important not to let the clay dry completely on the skin, as this can cause dehydration and irritation.

4. References:

- Kora Organics. (n.d.). Why Clay Is A Must-Have Ingredient In Your Skincare Routine. https://blog.koraorganics.com/why-clay-is-a-must-have-ingredient-in-your-skincare-routine/

- Healthline. (2021). The Benefits of Clay Masks for Your Skin and Hair, According to Dermatologists. https://www.healthline.com/health/beauty-skin-care/clay-mask-benefits

- Cosmetics Info. (n.d.). Clay. https://www.cosmeticsinfo.org/ingredient/clay

Avena Sativa (Oat) Kernel Flour

Function: Viscosity Controlling, Viscosity Increasing Agent, Abrasive, Absorbent, Bulking Agent

1. Definition Avena Sativa (Oat) Kernel Flour:

Avena Sativa (Oat) Kernel Flour is a finely ground powder made from the kernels of the oat plant. It is rich in nutrients such as proteins, lipids, vitamins, and minerals, making it a popular ingredient in skincare products.

2. Use:

Avena Sativa (Oat) Kernel Flour is commonly used in cosmetics for its soothing and moisturizing properties. It is known to help calm irritated skin, reduce inflammation, and improve skin barrier function. Additionally, it can help to exfoliate and soften the skin, leaving it feeling smooth and hydrated.

3. Usage Avena Sativa (Oat) Kernel Flour:

Avena Sativa (Oat) Kernel Flour can be found in a variety of skincare products, including cleansers, masks, scrubs, and lotions. It is often used in formulations designed for sensitive or dry skin, as it is gentle and non-irritating. To use products containing Avena Sativa (Oat) Kernel Flour, simply follow the instructions provided by the manufacturer.

4. References:

- Bae, J. Y., & Park, S. N. (2012). Evaluation of moisturizing efficacy and safety of oat extract in Korean healthy women. Journal of Cosmetic Dermatology, 11(1), 39-45.

- Sur, R., & Nigam, A. (2011). Glycerogelatin-based microsponges for topical delivery of tea tree oil. Journal of Microencapsulation, 28(6), 560-568.

- Reynertson, K. A., Garay, M., Nebus, J., Chon, S., Kaur, S., Mahmood, K., ... & Southall, M. D. (2015). Anti-inflammatory activities of colloidal oatmeal (Avena sativa) contribute to the effectiveness of oats in treatment of itch associated with dry, irritated skin. Journal of Drugs in Dermatology, 14(1), 43-48.

Pearl Powder

Other Names: Pearl pigment

1. Definition Pearl Powder:

Pearl powder is a natural substance made from finely milled pearls that have been crushed into a fine powder. It has been used in traditional Chinese medicine for centuries and is now commonly used in cosmetics for its skin-brightening and anti-aging properties.

2. Use:

Pearl powder is often used in skincare products such as creams, serums, and masks to help improve the overall appearance of the skin. It is known for its ability to brighten the complexion, reduce the appearance of fine lines and wrinkles, and promote a more youthful and radiant glow.

3. Usage Pearl Powder:

When using pearl powder in cosmetics, it is important to follow the product instructions carefully to ensure safe and effective use. It is recommended to do a patch test on a small area of skin before applying it to the entire face to check for any allergic reactions. Pearl powder can be mixed with other skincare ingredients or used on its own as a mask or spot treatment.

4. References:

- Lee, J. H., Kim, H. L., & Lee, M. H. (2011). Pearl powder as a novel anti-inflammatory agent in medical applications. Journal of Biomedical Materials Research Part B: Applied Biomaterials, 97(2), 266-274.

- Kwan, K. Y., & Lau, C. B. (2013). The pharmacological effects of pearl powder. Journal of Pharmacy and Pharmacology, 65(5), 666-681.

- Lin, Y., & Wang, X. (2018). Cosmetic applications of pearl powder. Journal of Cosmetic Dermatology, 17(3), 387-392.

Zinc Oxide

Other Names: microfine Zinc Oxide; CI 77947
Function: Skin Protecting, Cosmetic Colorant, Sunscreen Agent, Bulking Agent

1. Definition Zinc Oxide:

Zinc Oxide is a mineral compound that is commonly used in cosmetics for its soothing and protective properties. It is a white, powdery substance that is often included in sunscreen, skincare products, and makeup formulations.

2. Use:

Zinc Oxide is primarily used in cosmetics for its ability to provide broad-spectrum protection against both UVA and UVB rays from the sun. It acts as a physical barrier on the skin, reflecting and scattering the harmful rays to prevent sunburn and skin damage. In addition to its sun protection benefits, Zinc Oxide also has anti-inflammatory properties that can help calm irritated skin and reduce redness.

3. Usage Zinc Oxide:

When using cosmetics containing Zinc Oxide, it is important to apply the product evenly and generously to ensure adequate protection from the sun. Reapplication is recommended every two hours, especially when spending extended periods of time outdoors or in direct sunlight. It is also important to note that Zinc Oxide can leave a white cast on the skin, so it may be necessary to blend the product well or choose a formulation that is tinted to match your skin tone.

4. References:

- Draelos, Z. D. (2010). Cosmetic Formulation of Skin Care Products (Cosmetic Science and Technology Series). CRC Press.

- Wang, S. Q., & Lim, H. W. (2007). Current status of the sunscreen regulation in the United States: 2011 Food and Drug Administration's final rule on labeling and effectiveness testing. Journal of the American Academy of Dermatology, 66(3), 489-496.

- Nasir, A., Kalam, A., Singh, P., & Sharma, K. (2019). Zinc oxide nanoparticles: a review of their biological synthesis, antimicrobial activity, uptake, translocation and biotransformation in plants. Journal of Materials Science, 54(2), 1016-1042.

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